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中国物理学会期刊

环形等离子体中电子温度梯度不稳定性的粒子模拟

CSTR: 32037.14.aps.52.1656

Particle simulation method for the electron temperature gradient instability in toroidal plasmas

CSTR: 32037.14.aps.52.1656
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  • 用粒子模拟方法求解描述环形等离子体中电子温度梯度静电模的回旋动力学方程.方程采用圆磁通面的轴对称环形几何系统,考虑了有限拉摩半径、电子渡越频率k∥v ∥以及环形漂移(曲率和磁场梯度)运动wD(v2⊥,v 2∥,θ)的效应.简述了粒子模拟的基本方法.采用了四阶变步长积分格式,使计算省时、简便.讨论了模的基本特征 , 并且给出了临界梯度对电子温度与离子温度之

     

    The gyrokinetic equations for the electrostatic electron-temperature gradient mo des in toroidal plasmas are solved with particle simulation method. An axisymmet ric geometry with circular flux surfaces is employed. The full kinetics, includi ng finite Larmor radius effects, transit k∥v∥, and toro idal (curvature and magnetic gradient) drift motion, is retained. The basic method of the parti cle simulation is described briefly. The fourth-order adaptive stepsize scheme i s adopted, that saves computer time and is simple. The basic characteristics of the modes are discussed. The scaling of the critical gradient with respect to to roidicity and to the ratio of electron temperature over ion temperature is given . Comparison with experiments are made and the theoretical results are close to the experimental observations.

     

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